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December 14, 2025ChemSusChem2 citationsOpen Access

Dandelion‐Like CuWO 4 /WO 3 Composite Photoanode Employing Layered Double Hydroxide Catalysts for Enhanced Photoelectrochemical Water Oxidation

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SNSima NouhiMWMichael WarkDTDereje H. Taffa

Key Points

  • This research aims to enhance photoelectrochemical water oxidation using a novel heterojunction photoanode.
  • Fabricated a dandelion-like CuWO 4 /WO 3 heterojunction with NiCo-Layered Double Hydroxide as a co-catalyst.
  • Used hydrothermal and drop casting methods for synthesis.
  • Conducted morphological and photoelectrochemical assessments to evaluate performance.
  • Achieved a photocurrent density of 0.17 mA cm −2 at 1.23 V vs. RHE.
  • Demonstrated a cathodic shift in photocurrent onset potential compared to the pristine photoanode.
  • Enhanced photon-to-current conversion efficiency due to improved charge separation and proton-coupled electron transfer.

Abstract

This study introduces a novel modified dandelion‐like CuWO 4 /WO 3 heterojunction photoanode featuring NiCo‐layered double hydroxide (NiCo‐LDH) as a co‐catalyst, fabricated through hydrothermal and drop casting methods. Morphological and photoelectrochemical assessments elucidate that the optimal dandelion‐like CuWO 4 /WO 3 heterojunction facilitates charge separation in a neutral solution. Additionally, electrochemical evaluations of the CuWO 4 /WO 3 heterojunction decorated with LDHs co‐catalysts reveal enhancements in photon‐to‐current conversion efficiency (IPCE), cathodic shift of the photocurrent onset potential, and an increase in photocurrent density to 0.17 mA cm −2 at 1.23 V vs. RHE, which is twice that of the pristine photoanode under neutral pH conditions. The improved performance of the modified photoanode is attributed to the accelerated diffusion of reactants and products, as well as efficient proton‐coupled electron transfer processes facilitated by the presence of LDHs.

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Cite This Study

Nouhi et al. (2025) studied this question.

synapsesocial.com/papers/6941aaa70f5af7fd17df4b51https://doi.org/10.1002/cssc.202502130
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